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  1. 1.   A short review on antibody therapy for COVID-19
  2. Kumar, G. Venkat; Ramakrishnan, S.; Ramakrishnan,Saminathan
  3. New microbes and new infections. 2020, MAY; 35
  1. 2.   Interdomain Stabilization Impairs CD4 Binding and Improves Immunogenicity of the HIV-1 Envelope Trimer
  2. Zhang, Peng; Gorman, Jason; Geng, Hui; Liu, Qingbo; Lin, Yin; Tsybovsky, Yaroslav; Go, Eden P; Dey, Barna; Andine, Tsion; Kwon, Alice; Patel, Mit; Gururani, Deepali; Uddin, Ferzan; Guzzo, Christina; Cimbro, Raffaello; Miao, Huiyi; McKee, Krisha; Chuang, Gwo-Yu; Martin, Loïc; Sironi, Francesca; Malnati, Mauro S; Desaire, Heather; Berger, Edward A; Mascola, John R; Dolan, Michael A; Kwong, Peter D; Lusso, Paolo
  3. Cell Host & Microbe. 2018, Jun 13; 23(6): 832-844.e6.
  1. 3.   Potent and broad neutralizing activity of a single chain antibody fragment against cell-free and cell-associated HIV-1
  2. Zhang, M. Y.; Borges, A. R.; Ptak, R. G.; Wang, Y. P.; Dimitrov, A. S.; Alam, S. M.; Wieczorek, L.; Bouma, P.; Fouts, T.; Jiang, S. B.; Polonis, V. R.; Haynes, B. F.; Quinnan, G. V.; Montefiori, D. C.; Dimitrov, D. S.
  3. Mabs. 2010, May-Jun; 2(3): 266-274.
  1. 5.   Structure of severe acute respiratory syndrome coronavirus receptor-binding domain complexed with neutralizing antibody
  2. Prabakaran, P.; Gan, J. H.; Feng, Y.; Zhu, Z. Y.; Choudhry, V.; Xiao, X. D.; Ji, X. H.; Dimitrov, D. S.
  3. Journal of Biological Chemistry. 2006, JUN 9; 281(23): 15829-15836.
  1. 6.   Cholesterol dependence of HTLV-I infection
  2. Wielgosz, M. M.; Rauch, D. A.; Jones, K. S.; Ruscetti, F. W.; Ratner, L.
  3. Aids Research and Human Retroviruses. 2005, JAN; 21(1): 43-50.
  1. 7.   Small nonphosphorylated Grb2-SH2 domain antagonists evaluated by surface resonance plasmon technology
  2. Lung, F. D. T.; Chang, C. W.; Chong, M. C.; Liou, C. C.; Li, P.; Peach, M. L.; Nicklaus, M. C.; Lou, B. S.; Roller, P. P.
  3. Peptide Science (Biopolymers). 2005 80(5): 628-635.
  1. 8.   Oligomerization of the SARS-CoV S glycoprotein: dimerization of the N-terminus and trimerization of the ectodomain
  2. Xiao, X. D.; Feng, Y.; Chakraborti, S.; Dimitrov, D. S.
  3. Biochemical and Biophysical Research Communications. 2004, SEP 10; 322(1): 93-99.
  1. 9.   A model of the ACE2 structure and function as a SARS-CoV receptor
  2. Prabakaran, P.; Mao, X. D.; Dimitrov, D. S.
  3. Biochemical and Biophysical Research Communications. 2004 314(1): 235-241.
  1. 10.   Temporin/VesCP (T/V)-like antibiotic peptides, derived from frogs and wasps, induce migration of human monocytos and neutrophils
  2. Yang, D.; Chen, Q.; Oppenheim, J. J.; Kuusela, R.; Taylor, J. W.; Wade, D.
  3. Letters in Peptide Science. 2003 10(2): 99-110.
  1. 11.   Update on D-Ala-Peptide T-Amide (DAPTA): A viral entry inhibitor that blocks CCR5 chemokine receptors
  2. Ruff, M. R.; Polianova, M.; Yang, Q. E.; Leoung, G. S.; Ruscetti, F. W.; Pert, C. B.
  3. Current HIV Research. 2003 1(1): 51-67.
  1. 12.   Regulatory effects of deoxycholic acid, a component of the anti-inflammatory traditional Chinese medicine Niuhuang, on human leukocyte response to chemoattractants
  2. Chen, X.; Mellon, R. D.; Yang, L.; Dong, H. F.; Oppenheim, J. J.; Howard, O. M. Z.
  3. Biochemical Pharmacology. 2002 63(3): 533-541.
  1. 13.   Shikonin, a component of antiinflammatory Chinese herbal medicine, selectively blocks chemokine binding to CC chemokine receptor-1
  2. Chen, X.; Oppenheim, J.; Howard, O. M. Z.
  3. International Immunopharmacology. 2001 1(2): 229-236.
  1. 14.   Crystal Structure of Epstein-Barr Virus Protein Bcrf1, a Homolog of Cellular Interleukin-10
  2. Zdanov, A.; Schalkhihi, C.; Menon, S.; Moore, K. W.; Wlodawer, A.
  3. Journal of Molecular Biology. 1997 268(2): 460-467.
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